Electrochemical Sensing Based on Nanofibers Modified Electrodes for Application in Diagnostic, Food and Waste Water Samples

Author:

Nazari Maryam1,Kashanian Soheila12,Parnianchi Fatemeh34,Hasanvand Zahra1,Mohebbi Marjan56,Joseph Yvonne78,Rahimi Parvaneh78ORCID

Affiliation:

1. Faculty of Chemistry Razi University Kermanshah Iran

2. Faculty of Chemistry, Sensor and Biosensor Research Center (SBRC) & Nanoscience and Nanotechnology Research Center (NNRC) Razi University Kermanshah Iran

3. Biosensor Research Center, Endocrinology and Metabolism Molecular –Cellular Sciences Institute Tehran University of Medical Sciences Tehran Iran

4. Department of Chemistry Virginia Commonwealth University 1001 W. Main Street Richmond Virginia United States

5. Faculty of Pharmacy Kermanshah University of Medical Science Beheshti Blvd, 83VX+PCM Kermanshah Iran

6. Pharmaceutical Sciences Research Center, Health Institute Kermanshah University of Medical Sciences Kermanshah, I.R. Iran

7. Institute of Electronic and Sensor Materials, Faculty of Materials Science and Materials Technology Technische Universität Bergakademie Freiberg Gustav-Zeuner-St. 3 09599 Freiberg Germany

8. Freiberg Center for Water Research Technische Universität Bergakademie Freiberg Gustav-Zeuner-St. 3 09599 Freiberg Germany

Abstract

AbstractElectrochemical sensors and biosensors are today important analytical and monitoring tools in various fields, from agriculture and the food industry to environmental and biomedical/pharmaceutical applications. In particular, the integration of nanotechnology with electrochemical sensors and biosensors to develop a new generation of sensor platforms has made enormous progress in recent years. The outstanding properties of one‐dimensional (1D) nanofibers (NFs), such as high porosity, superior mechanical properties and high specific surface area have made them attractive electrocatalysts, support materials for the immobilization of biomolecules as well as mimetic materials for sensing and biosensing applications. Moreover, the possibility of fabricating multifunctional composites based on NFs increases (bio)sensing capabilities through synergistic effects and additive properties. This review describes the progress made over the last decade in the use of multifunctional NFs‐based composites as modified electrodes for the sensing of various analytes in biomedical, food, and wastewater treatment applications. The aim of this review is to provide a comprehensive overview and a guide for researchers from different disciplines to fabricate and improve their selective NFs‐based (bio)sensor platforms for the detection of desired analytes or multi‐analytes.

Publisher

Wiley

Subject

Electrochemistry,Catalysis

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